[1]单聪明①②,朱顺官①,张琳①,等.多点非电起爆网络设计与可靠性研究[J].爆破器材,2018,47(05):27-34.[doi:10.3969/j.issn.1001-8352.2018.05.005]
 SHAN Congming,ZHU Shunguan,ZHANG Lin,et al.Design and Reliability of Multipoint Non-electric Detonation Network[J].EXPLOSIVE MATERIALS,2018,47(05):27-34.[doi:10.3969/j.issn.1001-8352.2018.05.005]
点击复制

多点非电起爆网络设计与可靠性研究()
分享到:

《爆破器材》[ISSN:1001-8352/CN:32-1163/TJ]

卷:
47
期数:
2018年05
页码:
27-34
栏目:
基础理论
出版日期:
2018-09-27

文章信息/Info

Title:
Design and Reliability of Multipoint Non-electric Detonation Network
文章编号:
5236
作者:
单聪明①②朱顺官张琳李燕牟景艳徐小红吴建平
①南京理工大学化工学院(江苏南京,210094)
②中国人民解放军73862部队(江西上饶,334111)
Author(s):
SHAN Congming①②ZHU ShunguanZHANG LinLI YanMU JingyanXU XiaohongWU Jianping
① School of Chemical Engineering,Nanjing University of Science and Technology (Jiangsu Nanjing,210094)
② Unit 73862,PLA(Jiangxi Shangrao,334111)
关键词:
非电起爆网络破甲弹设计可靠性
Keywords:
non-electric detonation network high explosive anti-tank cartridge design reliability
分类号:
TJ45
DOI:
10.3969/j.issn.1001-8352.2018.05.005
文献标志码:
A
摘要:
为了拦截来袭破甲弹,保护重点目标,设计了一套多点非电起爆网络,起爆线型爆炸成型弹丸(LEFP)装药,利用药型罩形成LEFP来拦截破甲弹。设计的多点非电起爆网络由中心起爆元、2级起爆元、高强度导爆管、激发爆管和起爆雷管等组成。通过设计,明确了中心起爆元与2级起爆元的结构、激发爆管的结构及工艺流程;通过试验和结果分析,可得多点非电起爆网络的可靠度为0.993 3(γ=0.9);对4组弹径82 mm破甲弹的动态拦截试验表明,设计的多点非电起爆网络能够满足重点目标的主动防御。
Abstract:
The important targets can be protected by intercepting the incoming high explosive anti-tank cartridge. A set of multipoint non-electric detonation network was designed to detonate LEFP explosive, and to form LEFP projectile to intercept the high explosive anti-tank cartridge. The designed multipoint non-electric detonation network consists of central detonation element, second stage detonation element, high strength nonel tube, percussion explosive tube and initiation detonator.Through the design of multipoint non-electric detonation network, the structure of the central detonation element and the second stage detonation element, the structure of the percussion explosive tube and the assembly process flow were determined. The reliability of the multipoint non-electric detonating network is measured as 0.993 3 when γ=0.9.Through the four dynamic intercept tests of the 82 mm high explosive anti-tank cartridge, the results show that the designed multipoint non-electric detonation network can actively defend the high explosive anti-tank cartridge and protect the important -target.

参考文献/References:

[1]MILLER F P, VANDOME A F, MCBREWSTER J, et al. Composite armour[M].Saarbruücken: Alphascript Publishing, 2011.
[2]LIBRARY W E. High explosive antitank warhead[M].Saarbruücken: Alphascript Publishing, 2013.
[3]陈智刚,侯秀成,李守苍,等.高速破甲弹破甲稳定性数值模拟与实验研究[J]. 弹箭与制导学报,2009, 29(1):124-127.
CHEN Z G, HOU X C, LI S C, et al. Numerical simulation and experimental study of high-speed high explosive antitank projectile stability[J]. Journal of Projectiles,Rockets,Missiles and Guidance, 2009, 29(1):124-127.
[4]郑宇,王晓鸣,黄寅生,等.多点同步起爆网络的设计及试验研究[J].火工品,2008(1):1-4.
ZHENG Y, WANG X M, HUANG Y S, et al. Design and experimental investigation on multi-point synchronous explosive logic circuit[J]. Initiators & Pyrotechnics, 2008(1):1-4.
[5]梁车平,张玉若,金丽,等.基于冲击片雷管的多点同步起爆系统研究[J].爆破器材,2018,47(3):31-36.
?LIANG C P, ZHANG Y R, JIN L, et al. Research on a multi-point simultaneous intiation system based on EFI[J].Explosive Materials,2018,47(3):31-36.
[6]娄德兰. 导爆管起爆技术[M]. 北京:中国铁道出版社, 1995.
[7]朱顺官,李燕,张琳,等. 乙二胺高氯酸盐·三乙烯二胺高氯酸盐共晶起爆炸药及其制备方法: CN 101570459 B[P]. 2011-07-20.
[8]马鹏. 共晶类铵盐含能材料的合成、理论计算与应用研究[D]. 南京:南京理工大学, 2013. 
MA P. Synthesis, theoretical calculation and application research on cocrystal ammonium energetic materials[D]. Nanjing:Nanjing University of Science and Technology,2013.
[9]赵凯. SY装药柔爆索爆轰特性研究及工程应用[D]. 南京:南京理工大学, 2016. 
?ZHAO K. Detonation characteristics research and engineering application of SY mild detonating fuse[D]. Nanjing:Nanjing University of Science and Technology,2016.
[10]陈太林. 水悬浮法造粒点火药的制备及其性能[J]. 火工品, 1999(3):43-45.
CHEN T L. Ignition powder made from water suspension granulation[J]. Initiators & Pyrotechnics, 1999(3):43-45.
[11]朱顺官, 张琳, 李燕,等. SY共晶化合物的应用特性综述[C]//民用爆破器材理论与实践. 2012:242-245.
ZHU S G, ZHANG L, LI Y, et al. Briefly introduction on the application of SY cocrystal compound[C]//Theory and Practice of Industrial Explosive Materials. 2012:242-245.
[12]中国兵器工业总公司.火工品药剂试验方法相容性试验压力传感器法:GJB737.13—1994[S].1994.
[13]李兵, 陈曦, 杜忠华,等. LEFP对带壳装药冲击起爆过程的数值模拟与试验[J]. 含能材料, 2016, 24(11):1034-1040. 
?LI B, CHEN X, DU Z H, et al. Numerical simulation and experimental study of LEFP on impact initiation process of charge with shell [J]. Chinese Journal of Energetic Materials, 2016, 24(11):1034-1040.

相似文献/References:

[1]朱绪强①②,成一①,李德才②,等.大炸高下破甲弹的侵彻性能研究[J].爆破器材,2013,42(01):47.[doi:10.3969/j.issn.1001-8352.2013.01.013]
 ZHU Xuqiang,CHENG Yi,LI Decai,et al.Penetration of Shaped Charge Jets under Large Standoff Distance[J].EXPLOSIVE MATERIALS,2013,42(05):47.[doi:10.3969/j.issn.1001-8352.2013.01.013]

备注/Memo

备注/Memo:
收稿日期:2018-01-03
作者简介:单聪明(1988-),男,硕士,主要从事火工品的性能研究。E-mail:13097363230@163.com
更新日期/Last Update: 2018-09-26